Departamento de Medicina Genómica y Toxicología Ambiental, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Ciudad de México, AP, Mexico.
Anat Rec (Hoboken). 2019 Sep;302(9):1647-1657. doi: 10.1002/ar.24069. Epub 2019 Jan 25.
In the adult hippocampus of many mammals, a particular microenvironment in the neurogenic niche regulates the proliferation, self-renewal, and differentiation of neuronal stem cells. In this proliferative niche, a variety of molecules provide a finely regulated molecular signaling that controls stem cell properties. During development, Wnt signaling has been implicated in cell fate determination and proliferation, in the establishment of cell polarity, as well as a cue for axonal growth and dendrite orientation. In the adult brain, this pathway also participates in the stem cell self-renewal and neuronal differentiation. However, the effects of the chronic Wnt signaling modulation in the adult hippocampus, through the infusion of Wnt7a, Wnt5a, and Dkk-1, on the rate of neurogenesis and on the induction of neurite arborization have not been studied. In this study, we show that Wnt7a and Wn5a further increased the rate of newly generated neurons. However, Wnt5a exerted additional effects by promoting neurite growth and neurite misorientation in the dentate gyrus of adult rats. The chronic exposure to Dkk-1 also generated aberrant location of growing neurites. These results suggest that the interplay of canonical and non-canonical Wnt ligands participates in neuronal stem cell proliferation and in the establishment of proper neurite maturation. Anat Rec, 302:1647-1657, 2019. © 2019 American Association for Anatomy.
在许多哺乳动物的成年海马体中,神经发生龛中的一个特殊微环境调节神经元干细胞的增殖、自我更新和分化。在这个增殖龛中,多种分子提供了精细调节的分子信号,控制干细胞特性。在发育过程中,Wnt 信号已被牵连到细胞命运决定和增殖、细胞极性的建立以及轴突生长和树突定向的线索中。在成年大脑中,该途径还参与干细胞自我更新和神经元分化。然而,通过 Wnt7a、Wnt5a 和 Dkk-1 的输注,慢性 Wnt 信号调节对成年海马体中神经发生率和诱导神经突分支的影响尚未得到研究。在这项研究中,我们表明 Wnt7a 和 Wnt5a 进一步增加了新产生神经元的速度。然而,Wnt5a 通过促进成年大鼠齿状回的神经突生长和神经突错位产生了额外的作用。慢性暴露于 Dkk-1 也会导致生长中的神经突异常定位。这些结果表明,经典和非经典 Wnt 配体的相互作用参与了神经元干细胞的增殖和适当的神经突成熟的建立。解剖学记录,302:1647-1657,2019。© 2019 美国解剖学会。